Nayudu P R, Hercus F B
Biochem J. 1974 Jul;141(1):93-101. doi: 10.1042/bj1410093.
Polyacrylamide-gel electrophoresis and Bio-Gel P-300 molecular-sieve chromatography of mouse duodenal alkaline phosphatase demonstrates its molecular heterogeneity, which, in a kinetic sense, is manifest also in the differential relative velocities of the heterogeneous forms of the enzyme with two substrates, phenylphosphate and beta-glycerophosphate. Different treatments that eliminate most of the electrophoretic and chromatographic variability of the enzyme also decrease the velocities with both substrates so that the molar ratio of hydrolysis of one substrate relative to the other is also altered to a low but stable value. Concomitant with these changes, lipids and peptides are dissociated from the enzyme. The lipids are tentatively identified as a sterol and phospholipids. The peptides have an average composition of four to six amino acids and appear to be strongly electropositive. The conditions of dissociation suggest that their binding to the enzyme is non-covalent and predominantly based on hydrophobic and ionic bonding. The concept of lipid and peptide association would suggest prima facie differential molecular weights as a factor in the observed electrophoretic and chromatographic heterogeneity. However, the molecular forms of the enzyme with differences in elution volume equivalent to more than one-half the void volume of the Bio-Gel P-300 column, or even enzyme fractions dissociated from the lipids and peptides compared with undissociated portions, do not show any differences in sedimentation on sucrose-density-gradient centrifugation. This may be because the alterations in molecular weight owing to binding of small molecules are too small to be detected by this method. Alternatively, since lipids are involved, the binding may alter the partial specific volume in such a way that the buoyant density is not significantly altered.
对小鼠十二指肠碱性磷酸酶进行聚丙烯酰胺凝胶电泳和生物凝胶P - 300分子筛层析,结果显示其分子具有异质性。从动力学角度来看,这种异质性还表现为该酶的不同形式与两种底物(苯磷酸和β -甘油磷酸)反应时相对速度的差异。消除该酶大部分电泳和层析变异性的不同处理方法,也会降低其与两种底物反应的速度,从而使一种底物相对于另一种底物的水解摩尔比也改变为一个较低但稳定的值。伴随这些变化,脂质和肽从该酶上解离下来。脂质初步鉴定为一种固醇和磷脂。这些肽平均由四到六个氨基酸组成,且似乎带强正电。解离条件表明它们与酶的结合是非共价的,主要基于疏水和离子键。脂质和肽缔合的概念初步表明分子量差异是观察到的电泳和层析异质性的一个因素。然而,在生物凝胶P - 300柱上洗脱体积差异相当于柱空体积一半以上的酶分子形式,甚至与未解离部分相比从脂质和肽上解离下来的酶组分,在蔗糖密度梯度离心中都没有显示出沉降差异。这可能是因为小分子结合引起的分子量变化太小,无法用这种方法检测到。或者,由于涉及脂质,这种结合可能会以某种方式改变偏比容,使得浮力密度没有明显改变。